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The Promising Therapeutic Potential of Oligonucleotides for Pulmonary Fibrotic Diseases
Divyani Paul1, Madelyn H Miller2, Josh Born1
1Genetic Medicine, Eli Lilly and Company.
Introduction:
Fibrotic lung diseases represent a large subset of diseases with an unmet clinical need. Oligonucleotide therapies (ONT) are a promising therapeutic approach for the treatment of pulmonary disease as they can inhibit pathways that are otherwise difficult to target. Additionally, targeting the lung specifically with ONT is advantageous because it reduces the possibilities of systemic side effects and tolerability concerns.
Areas Covered:
This review presents the chemical basis of designing various ONTs currently known to treat fibrotic lung diseases. Further, the authors have also discussed the delivery vehicle, routes of administration, physiological barriers of the lung, and toxicity concerns with ONTs.
Expert Opinion:
ONTs provide a promising therapeutic approach for the treatment of fibrotic diseases of the lung, particularly because ONTs directly delivered to the lung show little systemic side effects compared to current therapeutic strategies. Dry powder aerosolized inhalers may be a good strategy for getting ONTs into the lung in humans. However, as of now, no dry powder ONTs have been approved for use in the clinical setting, and this challenge must be overcome for future therapies. Various delivery methods that can aid in direct targeting may also improve the use of ONTs for lung fibrotic diseases.
Insights
Oligonucleotide therapies (ONTs) offer a promising treatment for fibrotic lung diseases by targeting specific pathways. Direct lung delivery of ONTs minimizes systemic side effects, but challenges remain in clinical application.
Area of Science:
- Pulmonary Medicine
- Pharmacology
- Biotechnology
Background:
- Fibrotic lung diseases present a significant unmet clinical need.
- Oligonucleotide therapies (ONTs) offer a novel approach to target difficult pathways in pulmonary disease.
- Lung-specific delivery of ONTs can reduce systemic side effects and improve tolerability.
Approach:
- This review details the chemical design of ONTs for fibrotic lung diseases.
- It examines delivery vehicles, routes of administration, and lung-specific physiological barriers.
- Toxicity concerns associated with ONTs are also discussed.
Key Points:
- Directly delivered ONTs to the lung show fewer systemic side effects than current treatments.
- Dry powder aerosolized inhalers are a potential delivery method for human application.
- Overcoming challenges in dry powder ONTs is crucial for future clinical use.
Conclusions:
- ONTs represent a promising therapeutic strategy for fibrotic lung diseases.
- Optimizing delivery methods for direct lung targeting can enhance ONT efficacy.
- Further development is needed to advance dry powder ONTs into clinical practice.
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